Open Source Mac VR Development Software - Page 2

VR Development Software for Mac

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  • 1
    JanusWeb

    JanusWeb

    An in-browser implementation of JanusVR

    JanusXR re-imagines webpages as collaborative 3D web spaces interconnected by portals. JanusXR turns any webpage into its own three-dimensional space where users can meet and explore with others. Host content on the open web and customize Janus' open-source multiplayer server to fit your needs. VESTA is JanusXR's user-driven community. Post your own spaces and get feedback from other community members! The built-in editor allows users to join together to create content in real-time. JanusWeb's widget generator allows you to embed a 3D WebVR portal to your webspace into any 2D webpage. With the JanusXR Youtube translator, watching videos with friends is a walk in the park. Oculus Rift, Vive, GearVR, Daydream, and Cardboard support via WebVR API. Realtime collaboration across all devices via built-in networking. There are several different ways to use JanusWeb, depending on how much control you want to have over the whole system.
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  • 2
    MIVisionX

    MIVisionX

    Set of comprehensive computer vision & machine intelligence libraries

    MIVisionX toolkit is a set of comprehensive computer vision and machine intelligence libraries, utilities, and applications bundled into a single toolkit. AMD MIVisionX delivers highly optimized open-source implementation of the Khronos OpenVX™ and OpenVX™ Extensions along with Convolution Neural Net Model Compiler & Optimizer supporting ONNX, and Khronos NNEF™ exchange formats. The toolkit allows for rapid prototyping and deployment of optimized computer vision and machine learning inference workloads on a wide range of computer hardware, including small embedded x86 CPUs, APUs, discrete GPUs, and heterogeneous servers. AMD OpenVX is a highly optimized open-source implementation of the Khronos OpenVX™ 1.3 computer vision specification. It allows for rapid prototyping as well as fast execution on a wide range of computer hardware, including small embedded x86 CPUs and large workstation discrete GPUs.
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  • 3
    MOF-VR
    MOF-VR is a virtual reality program developed for Microsoft Windows and HTC Vive that allows for hypothetical metal-organic frameworks (MOFs) to be constructed and tested in molecular dynamics simulations of guest molecules.
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  • 4
    MathworldVR

    MathworldVR

    Math world in WebVR, powered by A-frame

    WebVR math platform made with A-Frame, Three.js, React, Redux. MathworldVR uses Redux for all the stuff around the app's state. It helps you write applications that behave consistently. On top of that, it provides a great developer experience, such as live code editing combined with a time-traveling debugger. For example, CalcButton component used as a backspace on the calculator is dispatching Redux action when user "clicks it" with VR hand-controller!
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  • 5
    MercuryMessaging

    MercuryMessaging

    Framework to facilitate communication in the Unity game engine

    The Mercury messaging toolkit is a new way to handle cross-component communication in the Unity game engine. It integrates seamlessly with the Unity Editor, and is both robust and expandable. It has been tested in Unity 2020 up until 2020.3.21f1, Unity 2019 up until 2019.2.17f1, Unity 2018 up until 2018.3.13f1, Unity 2017 up until 2017.4f1, and 5.6. The toolkit contains the Mercury messaging framework, which is a messaging and organizational framework built around the Mercury Protocol. Unity organizes its rendered scene objects (known in Unity as GameObjects) using a standard scene graph (known in Unity as the Scene Hierarchy). While Unity is very powerful, it is fairly difficult to achieve nonspatial communication between scriptable components of GameObjects (in Unity, known as MonoBehaviours).
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  • 6
    NatML

    NatML

    High performance, cross-platform machine learning for Unity Engine

    NatML allows developers to integrate machine learning into their Unity applications in under five lines of code with zero infrastructure. NatML completely removes the need to have any experience with machine learning in order to take advantage of the features it can provide. NatML takes advantage of hardware machine learning accelerators, like CoreML on iOS and macOS, NNAPI on Android, and DirectML on Windows. As a result, it is multiple times faster than Unity's own Barracuda engine. NatML exposes machine learning models with simple classes that return familiar data types. These are called "Predictors", and they handle all of the heavy lifting for you. No need to write pre-processing scripts or shaders, wrangle tensors, or anything of that sort. NatML supports Android, iOS, macOS, and Windows alike. As a result, you can build your app once, test it in the Editor, and deploy it to the device all in one seamless workflow.
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  • 7
    Networked-Aframe

    Networked-Aframe

    Web framework for building multi-user virtual reality experiences

    Multi-user VR on the Web. A framework for writing multi-user VR apps in HTML and JS. Built on top of A-Frame. Follow the NAF Getting Started tutorial to build your own example from scratch, including setting up a local server. Networked-Aframe works by syncing entities and their components to connected users. To connect to a room you need to add the networked-scene component to the a-scene element. For an entity to be synced, add the networked component to it. By default the position and rotation components are synced, but if you want to sync other components or child components you need to define a schema. For more advanced control over the network messages see the sections on Broadcasting Custom Messages and Options. Create an instance of a template to be synced across clients. The position and rotation will be synced by default. The buffered-interpolation is added to allow for less network updates while keeping smooth motion.
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  • 8
    Collection of Open Source based tools and API that facilitate rapid application development for Games and Virtual Reality based applications.
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  • 9
    OpenVRL - standas for Open Source Virtual Reality 'L' ('L' stands for Life or Library...). A full 3D virtual reality simulation library, with physics, collision detection, platform independand rendering, etc. Uses OpenDE and OPCODE libraries for dy
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  • 10
    OpenReality will be a 3D Engine Library for development of Games, Virtual Reality and 3D Visualization applications. It will be very intuitive, and strongly object oriented. Of course, performance will have a great weight on the project´s decisions.
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  • 11
    RealityUI

    RealityUI

    A Swift Package for creating familiar UI Elements and animation

    RealityUI is a collection of user interface classes for RealityKit. The classes included in RealityUI aim to offer familiar User Interface guidelines, but in a 3D setting for Augmented and Virtual Reality through RealityKit. The User Interface controls in this repository so far are made to be familiar to what people are used to with 2D interfaces, however the plan is to expand the tools on offer to new and unique controls, which are more appropriate for an Augmented Reality and Virtual Reality context. RUISwitch is a 3D toggle switch with an on and off state. Default bounding box is 2x1x1m. RUIStepper is used to increment or decrement a value. Default bounding box is 2x1x0.25m. An interactive track to represent an interpolated value. Default bounding box is 10x1x1m including thumb. RUIButton is used to initiate a specified action. The action here will only trigger if the gesture begins on a button, and also ends on the same button.
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  • 12
    This project aims to develop an interaction framework based on body detection by webcams, identifying the skeleton shape (hands, arms, head, legs etc), for games, virtual reality, augmented reality and other applications.
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  • 13
    A toolkit for developing virtual reality applications. Built in C++, over OpenGL, it is object oriented and offers the use of a scene graph for object hierarchy. Also, it provides interfaces for using VR equipment such as tracking devices.
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  • 14
    UE4-Plugin-OffAxis

    UE4-Plugin-OffAxis

    This plugin provides a fishtank-VR via a so-called OffAxisProjection

    UE4-Plugin-OffAxis plugin provides a fishtank-VR via a so-called OffAxisProjection by modifying the projection matrix using a custom ULocalPlayer. If your project is a C++ project, you are good to go. If you have a pure blueprint project, add a random C++ class via File -> Add C++ class (empty class is fine). Copy the Plugin in your (you might need to create a Plugin folder in the directory where your project file is). Start (or restart) Unreal Engine. You might get a warning that the plugin needs to be rebuilt. That's normal. Drag the OffAxisActor in your scene. Set position of OffAxisActor to 0,0,0. In the OffAxisActor, place the child actors P_a, P_b, and P_c so that they correspond to the corners of your "virtual window". For some inputs, you might need to change the key if they are already in use in your project.
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  • 15
    UXF

    UXF

    Framework for creating human behaviour experiments in Unity

    The Unity Experiment Framework (UXF) is an open-source package for the Unity3D game engine that can be used to assist the development of virtual reality human behavior experiments. Developed by Jack Brookes, Immersive Cognition Group, University of Leeds. Automates the process of collecting the variables you define within your task, and stores them simple CSV files. Time-series data such as the position and rotation of an object can be easily acquired and split into one file per trial. Allows you to programmatically define independent variables for your session, blocks and trials. Includes a pre-built UI for allowing the researcher to view and enter information about the session. All file IO tasks are performed concurrently in a separate thread to avoid any drops in the framerate. UXF works with any Unity project but is designed specifically for virtual reality human behavior experiments.
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  • 16
    VR Juggler is a virtual platform for virtual reality application development created at the Virtual Reality Applications Center at Iowa State University. Applications developed in VR Juggler can transparently move between a wide range of VR systems.
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  • 17
    VRTK

    VRTK

    An example of how to use the Tilia packages to create great content

    VRTK is a collection of useful, reusable solutions to common problems found when building for virtual reality. VRTK aims to help productivity by speeding up the creation process from prototyping ideas to building complete solutions. The passion behind VRTK is to try and enable as many people as possible to build for VR, from seasoned developers to complete beginners who have a wonderful idea in their head but are unsure of how to create it. VRTK aims to be easy to understand so the absolute beginner can feel comfortable turning their creative thoughts into experiences but it also has enough power and flexibility to allow developers to really build out their perfect solution with little friction and without constantly re-inventing the wheel. Virtual reality is a relatively new medium so no one really understands what truly works or what doesn't work in terms of solutions, so VRTK aims to bring a community of diverse people from all across the world together to work on solving this.
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  • 18
    A collection of projects based on the Virtual Object System (VOS) platform. The goal of Interreality is to develop a free and open platform for multiuser 3D virtual reality and interactive, collaborative 3D virtual spaces, as well as other applications.
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  • 19
    VRS is an environment for presenting three dimensional (3D) world. All visualisations are made at client(s) side VRC (Virtual Reality Client - example client is under developement, SF site avaible, see also http://jvrc.info).
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  • 20
    VRT is a Virtual Reality Toolkit. It is planned to be OS-independent, easy-to-use, full-feature VR platform. It integrates 3D engine, physical engine and AI engine.
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  • 21
    Vive Stereo Rendering Toolkit
    Vive Stereo Rendering Toolkit provides drag-and-drop components for developers to create stereoscopic rendering effects in a few minutes. With this toolkit, effects such as mirrors or portal doors can be easily achieved in your VR application. Vive or other SteamVR-compatible HMDs, no need to modify. Vive Focus, add WaveVR from "WaveVR/Prefabs" to the scenes; remember to expand the camera rig. Oculus Rift, add OVRCameraRig from "OVR/Prefabs" to the scenes.
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  • 22
    WebXR Polyfill

    WebXR Polyfill

    Use the WebXR Device API today providing fallbacks to native WebVR 1.1

    Use the WebXR Device API today, providing fallbacks to native WebVR 1.1 and Cardboard. A JavaScript implementation of the WebXR Device API, as well as the WebXR Gamepad Module. This polyfill allows developers to write against the latest specification, providing support when run on browsers that implement the WebVR 1.1 spec, or on mobile devices with no WebVR/WebXR support at all. The polyfill reflects the stable version of the API which has shipped in multiple browsers. If you are writing code against the WebVR 1.1 spec, use webvr-polyfill, which supports browsers with the 1.0 spec, or no implementation at all. It is recommended to write your code targeting the WebXR Device API spec however and use this polyfill as browsers begin to implement the latest changes. The minimal input controls currently supported by WebXR is polyfilled here as well, using the Gamepad API.
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  • 23
    aframe-react

    aframe-react

    Build virtual reality experiences with A-Frame and React

    Build virtual reality experiences with A-Frame and React. A-Frame is a web framework for building virtual reality experiences. Since A-Frame is built on top of the DOM, web libraries such as React, Vue.js, Angular, Ember.js, d3.js are able to sit cleanly on top of A-Frame. I recommend using vanilla A-Frame and aframe-state-component with static templating over aframe-react. React wastes a lot of cycles and incurs a lot of memory garbage. aframe-react is often abused where it is too easy to place 3D/real-time logic at the React layer, causing poor performance (e.g., doing React renders on ticks). aframe-react applications frequently ignore the prescribed ECS framework of A-Frame. Internally, React does tons of computation to compute what changed, and flushes it to the entire application. It is apparent React ecosystem does not care much about memory as most examples allocate functions and objects in the render method, and where immutables are popular.
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  • 24
    Virtual Reality Modeling Language
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  • 25
    Platform Independent Virtual Reality Client and Server. Come to http://www.vrspace.org/ for more information and demo.
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